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	<title>Archives des FGS/4000 - Pignat.com</title>
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		<title>Fluidized bed drying</title>
		<link>https://pignat.com/en/product/fluidized-bed-drying-2/</link>
		
		<dc:creator><![CDATA[PIGNAT]]></dc:creator>
		<pubDate>Thu, 04 Apr 2019 14:55:31 +0000</pubDate>
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					<description><![CDATA[<h3>Study air fluidization of solid particles</h3>
<p>&#160;</p>
<hr />
<p>GENERAL SPECIFICATIONS</p>
<hr />
<ul>
<li>Air blower, 0 to 350 m3/h, variable speed drive for flow control.</li>
<li>Air heating device, with safety thermostat at 90°C and low flow rate safety detector.</li>
<li>Air diffuser, stainless steel fritted.</li>
<li>Glass fluidization chamber, product feeding and sampling taps.</li>
<li>Differential pressure measurement, piezometric tube.</li>
<li>Particle filter at air outlet.</li>
</ul>
<p><b>Instrumentation</b></p>
<ul>
<li>Temperature probes Pt 100 Ω.</li>
<li>2 coupled temperature / relative humidity probes.</li>
<li>One air speed transmitter with hot wire sensor.</li>
<li>Vacuum gauge.</li>
<li>Float rotameter.</li>
</ul>
<p>&#160;</p>
<p><strong>Dim</strong> : 120 x 80 x 200 cm - 150 kg</p>
<p>SS tubular framework 40 x 40mm</p>
<p>&#160;</p>
<p>[print-me target="#page"]</p>
<p>L’article <a href="https://pignat.com/en/product/fluidized-bed-drying-2/">Fluidized bed drying</a> est apparu en premier sur <a href="https://pignat.com/en">Pignat.com</a>.</p>
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<h3>Apply experimental fluidization equations</h3>
<p>Define the DP graph for the fluidized bed as a function of air flow rate</p>
<p>Determine the minimum fluidization velocity</p>
<p>Influence of the height of the bed of particles</p>
<p><b> </b></p>
<h3>Study the drying of solid particles in a hot air stream</h3>
<p>Apply the humid air graph</p>
<p>Determine the kinetic graphs for linear phase and diffusion phase drying</p>
<p>&nbsp;</p></div>
<p><!-- .vgblk-rw-wrapper --></p>
<p>L’article <a href="https://pignat.com/en/product/fluidized-bed-drying-2/">Fluidized bed drying</a> est apparu en premier sur <a href="https://pignat.com/en">Pignat.com</a>.</p>
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